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let test_channels_archive_archived _tctx = let session = Slacko . start_session ? base_url token in let archived_channel = Slacko . channel_of_string " # archived_channel " in Slacko . channels_archive session archived_channel >|= fun resp -> assert_equal ` Already_archived resp
let test_channels_archive_general _tctx = let session = Slacko . start_session ? base_url token in let general = Slacko . channel_of_string " # general " in Slacko . channels_archive session general >|= fun resp -> assert_equal ` Cant_archive_general resp
let channels_archive_tests = fake_slack_tests " channels_archive " [ " test_bad_auth " , test_channels_archive_bad_auth ; " test_existing " , test_channels_archive_existing ; " test_missing " , test_channels_archive_missing ; " test_archived " , test_channels_archive_archived ; " ...
let test_channels_create_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . channels_create session " # new_channel " >|= fun resp -> assert_equal ` Invalid_auth resp
let test_channels_create_new _tctx = let session = Slacko . start_session ? base_url token in Slacko . channels_create session " # new_channel " >|= get_success >|= abbr_channel_obj >|= fun channel -> assert_equal ~ printer : show_abbr_channel_obj ( abbr_json abbr_channel_obj_of_yojson Fake_slack ....
let test_channels_create_existing _tctx = let session = Slacko . start_session ? base_url token in Slacko . channels_create session " # general " >|= fun resp -> assert_equal ` Name_taken resp
let channels_create_tests = fake_slack_tests " channels_create " [ " test_bad_auth " , test_channels_create_bad_auth ; " test_new " , test_channels_create_new ; " test_existing " , test_channels_create_existing ; ]
let test_channels_history_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in let new_channel = Slacko . channel_of_string " # new_channel " in Slacko . channels_history session new_channel >|= fun resp -> assert_equal ` Invalid_auth resp
let test_channels_history_no_params _tctx = let session = Slacko . start_session ? base_url token in let random = Slacko . channel_of_string " # random " in Slacko . channels_history session random >|= get_success >|= fun history -> assert_equal ~ printer : show_abbr_history_obj ( abbr_json abbr_...
let channels_history_tests = fake_slack_tests " channels_history " [ " test_bad_auth " , test_channels_history_bad_auth ; " test_no_params " , test_channels_history_no_params ; ]
let test_channels_list_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . channels_list session >|= fun resp -> assert_equal ` Invalid_auth resp
let test_channels_list _tctx = let session = Slacko . start_session ? base_url token in Slacko . channels_list session >|= get_success >|= List . map abbr_channel_obj >|= fun channels -> assert_equal ~ printer : show_abbr_channel_obj_list ( abbr_json abbr_channel_obj_list_of_yojson Fake_slack . chan...
let channels_list_tests = fake_slack_tests " channels_list " [ " test_bad_auth " , test_channels_list_bad_auth ; " test " , test_channels_list ; ]
let test_files_list_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . files_list session >|= fun resp -> assert_equal ` Invalid_auth resp
let test_files_list _tctx = let session = Slacko . start_session ? base_url token in Slacko . files_list session >|= get_success >|= abbr_files_list_obj >|= fun files -> assert_equal ~ printer : show_abbr_files_list_obj ( abbr_json abbr_files_list_obj_of_yojson Fake_slack . files_json ) files
let files_list_tests = fake_slack_tests " files_list " [ " test_bad_auth " , test_files_list_bad_auth ; " test " , test_files_list ; ]
let test_groups_history_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in let seekrit = Slacko . group_of_string " seekrit " in Slacko . groups_history session seekrit >|= fun resp -> assert_equal ` Invalid_auth resp
let test_groups_history_no_params _tctx = let session = Slacko . start_session ? base_url token in let seekrit = Slacko . group_of_string " seekrit " in Slacko . groups_history session seekrit >|= get_success >|= fun history -> assert_equal ~ printer : show_abbr_history_obj ( abbr_json abbr_histor...
let groups_history_tests = fake_slack_tests " groups_history " [ " test_bad_auth " , test_groups_history_bad_auth ; " test_no_params " , test_groups_history_no_params ; ]
let test_groups_list_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . groups_list session >|= fun resp -> assert_equal ` Invalid_auth resp
let test_groups_list _tctx = let session = Slacko . start_session ? base_url token in Slacko . groups_list session >|= get_success >|= List . map abbr_group_obj >|= fun groups -> assert_equal ~ printer : show_abbr_group_obj_list ( abbr_json abbr_group_obj_list_of_yojson Fake_slack . groups_json ) ...
let groups_list_tests = fake_slack_tests " groups_list " [ " test_bad_auth " , test_groups_list_bad_auth ; " test " , test_groups_list ; ]
let test_im_history_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in let slackbot = Slacko . conversation_of_string Fake_slack . im_slackbot in Slacko . im_history session slackbot >|= fun resp -> assert_equal ` Invalid_auth resp
let test_im_history_no_params _tctx = let session = Slacko . start_session ? base_url token in let slackbot = Slacko . conversation_of_string Fake_slack . im_slackbot in Slacko . im_history session slackbot >|= get_success >|= fun history -> assert_equal ~ printer : show_abbr_history_obj ( abbr_json...
let im_history_tests = fake_slack_tests " im_history " [ " test_bad_auth " , test_im_history_bad_auth ; " test_no_params " , test_im_history_no_params ; ]
let test_im_list_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . im_list session >|= fun resp -> assert_equal ` Invalid_auth resp
let test_im_list _tctx = let session = Slacko . start_session ? base_url token in Slacko . im_list session >|= get_success >|= List . map abbr_im_obj >|= fun ims -> assert_equal ~ printer : show_abbr_im_obj_list ( abbr_json abbr_im_obj_list_of_yojson Fake_slack . ims_json ) ims
let im_list_tests = fake_slack_tests " im_list " [ " test_bad_auth " , test_im_list_bad_auth ; " test " , test_im_list ; ]
let test_users_list_bad_auth _tctx = let session = Slacko . start_session ? base_url badtoken in Slacko . users_list session >|= fun resp -> assert_equal ` Invalid_auth resp
let test_users_list _tctx = let session = Slacko . start_session ? base_url token in Slacko . users_list session >|= get_success >|= List . map abbr_user_obj >|= fun users -> assert_equal ~ printer : show_abbr_user_obj_list ( abbr_json abbr_user_obj_list_of_yojson Fake_slack . users_json ) users
let users_list_tests = fake_slack_tests " users_list " [ " test_bad_auth " , test_users_list_bad_auth ; " test " , test_users_list ; ]
let suite = " tests " >::: [ api_test_tests ; auth_test_tests ; channels_archive_tests ; channels_create_tests ; channels_history_tests ; channels_list_tests ; files_list_tests ; groups_history_tests ; groups_list_tests ; im_history_tests ; im_list_tests ; users_list_tests ; ]
let ( ) = run_test_tt_main suite
let cmp_elapsed_time test_name start_time expected_time = let elapsed_time = Unix . gettimeofday ( ) . - start_time in let diff = elapsed_time . - expected_time in let result = diff >= 0 . && diff <= 0 . 2 in instrument result " Lwt_unix sleep and timeout : % s : % f % f % f % b " t...
let suite = suite " Lwt_unix sleep and timeout " [ test " sleep " begin fun ( ) -> let start_time = Unix . gettimeofday ( ) in let duration = 1 . 0 in Lwt_unix . sleep duration >>= fun ( ) -> let check = cmp_elapsed_time " sleep " start_time duration in Lwt . return check end ...
module Int_list = GLib . SLList . Make ( struct type t = int let t_typ = int let free_func = None end )
let test_list_int_append test_ctxt = let v = allocate int 1 in let sllist = Int_list . append None v in let v = allocate int 2 in let sllist = Int_list . append sllist v in let length = Int_list . length sllist in assert_equal ~ printer : Unsigned . UInt . to_string Unsigned . UInt . ( of_int ...
let one = allocate int 1
let two = allocate int 2
let three = allocate int 3
let build_int_sllist ( ) = let sllist = Int_list . append None one in let sllist = Int_list . append sllist two in Int_list . append sllist three
let test_list_int_next test_ctxt = let sllist = build_int_sllist ( ) in let values = [ 1 ; 2 ; 3 ] in let rec check_loop elt = function | [ ] -> ( ) | h :: q -> let _ = match Int_list . get_data elt with | None -> assert_failure " The next node should have data " | Some v -> ...
let assert_node node value printer = match Int_list . get_data node with | None -> let msg = " This node should have data " in assert_equal ~ msg false true | Some v -> assert_equal ~ printer value ( !@ v )
let test_list_int_last test_ctxt = let sllist = build_int_sllist ( ) in match Int_list . last sllist with | None -> let msg = " the last element of the sllist should not be none " in assert_equal ~ msg false true | last -> assert_node last 3 string_of_int
let test_list_int_nth test_ctxt = let sllist = build_int_sllist ( ) in let ( ) = assert_node ( Int_list . nth sllist 0 ) 1 string_of_int in let ( ) = assert_node ( Int_list . nth sllist 1 ) 2 string_of_int in assert_node ( Int_list . nth sllist 2 ) 3 string_of_int
let test_list_int_sort test_ctxt = let sllist = build_int_sllist ( ) in let sllist = Int_list . sort sllist ( fun ptr_a ptr_b -> let a = !@ ptr_a in let b = !@ ptr_b in if a = b then 0 else if a > b then 1 else - 1 ) in match Int_list . last sllist with | None -> let msg = " the last elem...
let test_list_int_concat test_ctxt = let sllist = build_int_sllist ( ) in let sllist ' = Int_list . append None ( allocate int 4 ) in let sllist ' = Int_list . append sllist ' ( allocate int 5 ) in let sllist ' = Int_list . append sllist ' ( allocate int 6 ) in let sllist ' ' ...
let test_list_int_free_full test_ctxt = let counter = ref 0 in let module Int_list = GLib . SLList . Make ( struct type t = int let t_typ = int let free_func = Some ( fun v -> counter := ( ! counter + ( !@ v ) ) ) end ) in let sllist = Int_list . append None ( allocate ~ finalise (...
let test_list_int_foreach test_ctxt = let sllist = build_int_sllist ( ) in let counter = ref 0 in let ( ) = Int_list . foreach sllist ( fun v -> counter := ( ! counter + ( !@ v ) ) ) in assert_equal_int 6 ( ! counter )
module Char_ptr_list = GLib . SLList . Make ( struct type t = char let t_typ = char let free_func = None end )
let s_one = GLib . Core . string_to_char_ptr " one "
let s_two = GLib . Core . string_to_char_ptr " two "
let s_three = GLib . Core . string_to_char_ptr " three "
let build_char_ptr_sllist ( ) = let sllist = Char_ptr_list . append None s_one in let sllist = Char_ptr_list . append sllist s_two in Char_ptr_list . append sllist s_three
let test_list_char_ptr_append_length test_ctxt = let sllist = build_char_ptr_sllist ( ) in let ref_len = Unsigned . UInt . of_int 3 in let len = Char_ptr_list . length sllist in let printer = Unsigned . UInt . to_string in assert_equal ~ printer ref_len len
let test_list_char_ptr_next test_ctxt = let sllist = build_char_ptr_sllist ( ) in let node = Char_ptr_list . next sllist in let _ = match Char_ptr_list . get_data node with | None -> assert_failure " The next node should have data " | Some v -> let str = GLib . Core . char_ptr_to_string v in a...
let tests = " GLib2 Sl List module tests " >::: [ " Sl list of int create append length test " >:: test_list_int_append ; " Sl list of int next test " >:: test_list_int_next ; " Sl list of int last test " >:: test_list_int_last ; " Sl list of int sort test " >:: test_list_int_sort ; ...
let random_email ( ) = let b = Bytes . create 25 in for i = 0 to 9 do Bytes . set b i @@ Char . of_int_exn @@ Random . int 25 + 97 done ; Bytes . set b 10 ' ' ; @ for i = 11 to 20 do Bytes . set b i @@ Char . of_int_exn @@ Random . int 25 + 97 done ; Bytes . blit_str...
let msgs = String . Table . create ~ size : 13 ( )
let main n = let send_n_mails server n = let rec inner = function | n when n <= 0 -> Deferred . unit | n -> Tcp . with_connection ( Tcp . to_host_and_port " localhost " ( Tcp . Server . listening_on server ) ) ( fun _ r w -> Smtp . Client . send_email r w ~ from ( : random_ema...
let ( ) = if Array . length Sys . argv < 2 then ( Printf . printf " Usage : % s n \ n " Sys . argv . ( 0 ) ; Pervasives . exit 1 ) ; don ' t_wait_for @@ main @@ int_of_string Sys . argv . ( 1 ) ; never_returns @@ Scheduler . go ( )
let check_import_invariants ~ test_descr ~ rolling ( previously_baked_blocks , exported_block ) ( imported_chain_store , head ) = let open Lwt_result_syntax in protect ~ on_error ( : fun err -> Format . eprintf " Error while checking invariants at : % s " test_descr ; Lwt . return ( Er...
let export_import ~ test_descr ~ previously_baked_blocks ? exported_block_hash ~ rolling ( store_dir , context_dir ) chain_store = let open Lwt_result_syntax in let * ( ) = check_invariants chain_store in let open Filename . Infix in let snapshot_path = store_dir // " snapshot . full " in let...
let check_baking_continuity ~ test_descr ~ exported_chain_store ~ imported_chain_store = let open Lwt_result_syntax in let open Tezos_protocol_alpha . Protocol . Alpha_context in let *! imported_head = Store . Chain . current_head imported_chain_store in let * { Constants . parametric = { blocks_p...
let test store_path ~ test_descr ? exported_block_level ~ nb_blocks_to_bake_before_export ~ rolling store = let open Lwt_result_syntax in let chain_store = Store . main_chain_store store in let *! genesis_block = Store . Chain . genesis_block chain_store in let * ( previously_baked_blocks , _current_...
let make_tests speed genesis_parameters = let open Tezos_protocol_alpha . Protocol . Alpha_context in let { Parameters . constants = { Constants . blocks_per_cycle ; preserved_cycles ; _ } ; _ ; } = genesis_parameters in let blocks_per_cycle = Int32 . to_int blocks_per_cycle in let nb_in...
let test_rolling ( ) = let patch_context ctxt = Alpha_utils . default_patch_context ctxt in let test ( store_dir , context_dir ) store = let open Lwt_result_syntax in let chain_store = Store . main_chain_store store in let *! genesis_block = Store . Chain . genesis_block chain_store in let nb_cy...
let test_drag_after_import ( ) = let open Lwt_result_syntax in let constants = Default_parameters . { constants_test with blocks_per_cycle = 256l ; consensus_threshold = 0 } in let patch_context ctxt = let test_parameters = let open Tezos_protocol_alpha_parameters in { Default_parameters . ( p...
let tests speed = let test_cases = let generated_tests = make_tests speed Tezos_protocol_alpha_parameters . Default_parameters . ( parameters_of_constants { constants_sandbox with consensus_threshold = 0 } ) in test_rolling ( ) :: test_drag_after_import ( ) :: generated_tests in ( " snaps...
let p s = match Ptime . Span . of_d_ps s with
let n s = Ptime . Span . ( neg ( p s ) )
let pps ps = p ( 0 , ps )
let nps ps = n ( 0 , ps )
let conversions = test " Constants and conversions " @@ fun ( ) -> let trip_int secs = eq_option ~ eq ( ) := ~ pp : pp_int Ptime . Span . ( to_int_s ( of_int_s secs ) ) ( Some secs ) in eq_span ( Ptime . Span . of_int_s 0 ) Ptime . Span . zero ; eq_span ( Ptime . S...
let predicates = test " Predicates " @@ fun ( ) -> eq_bool ( Ptime . Span . equal Ptime . Span . zero Ptime . Span . zero ) true ; eq_bool ( Ptime . Span . equal Ptime . Span . zero ( pps 1L ) ) false ; eq_bool ( Ptime . Span . equal Ptime . Span . zero ( nps ...
let arithmetic = test " Arithmetic " @@ fun ( ) -> eq_span ( Ptime . Span . add ( pps 86_399_999_999_999_999L ) ( pps 1L ) ) ( p ( 1 , 0L ) ) ; eq_span ( Ptime . Span . add ( nps 86_399_999_999_999_999L ) ( nps 1L ) ) ( n ( 1 , 0L ) ) ; eq_span ...
let rounding = test " Rounding " @@ fun ( ) -> let r ~ frac a b = eq_span ( Ptime . Span . round ~ frac_s : frac ( p ( 3 , a ) ) ) ( p ( 3 , b ) ) ; eq_span ( Ptime . Span . round ~ frac_s : frac ( p ( 3 , a ) ) ) ( p ( 3 , b ) ) in let r_ca...
let pretty_printing = test " Pretty printing " @@ fun ( ) -> let fmt s = Format . asprintf " % a " Ptime . Span . pp s in let n s = fmt @@ Ptime . Span . ( neg ( p s ) ) in let p s = fmt @@ p s in let pps ps = p ( 0 , ps ) in let nps ps = n ( 0 , ps ) in eq_str ( ...
let suite = suite " Ptime span tests " [ conversions ; predicates ; arithmetic ; rounding ; pretty_printing ; ]
module E = Sparse_vector . Rng ( Data . Zindex ) ( Hash . Z ) ( Data . Zcoeff ) ; ;
let v = [ | 0 ; 1 ; 0 ; 0 ; 2 ; 0 ; 3 ; 0 ; 0 ; 4 ; 0 ; 0 ; 0 ; 5 ] | ; ;
let v0 = E . to_sparse 2 v ; ;
let v0a = E . to_full v0 ; ;
let v1 = E . copy v0 ; ;
let l0 = E . H . flush ( snd v0 ) ; ;
let v0b = E . to_full v0 ; ;
let v2 = E . map pred v1 ; ;
let v2a = E . to_full v2 ; ;
let v1a = E . to_full v1 ; ;
let v3 = E . add v2 v1 ; ;
let v2a = E . to_full v2 ; ;
let v3a = E . to_full v3 ; ;
let v4 = E . add v2 v1 ; ;
let v1a = E . to_full v1 ; ;
let v2a = E . to_full v2 ; ;
let v4a = E . to_full v4 ; ;
let v5 = E . sub v4 v3 ; ;
let v5a = E . to_full v5 ; ;
let v6 = E . sub_vector 2 7 v1 ; ;
let v6a = E . to_full v6 ; ;